Woo Jungeun, Jung Suna, Gauvin Mathieu, Lachapelle Pierre
Departments of Ophthalmology and Neurology and Neurosurgery, Research Institute of the McGill University Health Centre/Montreal Children's Hospital, Montreal, QC, Canada.
Department of Ophthalmology, Research Institute of the McGill University Health Centre, 1001 Decarie Boulevard, Glen Site, Block E, Room EM03238 (Program Mail Drop Point EM03211), Montreal, QC, H4A 3J1, Canada.
Doc Ophthalmol. 2017 Oct;135(2):155-164. doi: 10.1007/s10633-017-9600-3. Epub 2017 Jul 24.
Although the DTL fiber electrode has been in use in the ERG field for more than four decades, its composition was never clearly defined. We compared five different types of conductive (DTL type) yarn (differing in terms of mass, number of filaments, and crimping degree) in order to determine whether we could identify one that would be better suited for the recording of ERGs.
Photopic flash ERGs were recorded from five subjects using the following DTL electrodes: 27/7, 22/1, 11/1, 11/12, and 22/12. Data analysis included amplitude and peak time measurements of the a- and b-waves in the time domain (TD) as well as measurements of specific frequency descriptors of the ERG waveform in the time-frequency domain using the discrete wavelet transform (DWT) approach. The degree of comfortableness was also assessed in 12 subjects with two surveys (Likert 5-point and the ranking scale).
Comparisons of TD and DWT parameters did not permit to identify the best DTL electrode, all yielding comparable measures. There was a slight trend for the largest electrode (22/12) to yield the largest response, but this was at the expense of comfort, the 22/12 electrode being rated as the least comfortable.
Given the minimal impact the different electrodes had on the amplitude of the signal, we believe that comfort should dictate our choice. It would appear from our results that use of a multifilament electrode is the best choice since one can get an electrode whose size is optimized for the recording of large responses while minimizing the foreign-body sensation due to the small size of each of the filaments that compose this multifilament electrode.
尽管双极横向纤维(DTL)纤维电极在视网膜电图(ERG)领域已使用了四十多年,但其组成从未得到明确界定。我们比较了五种不同类型的导电(DTL型)纱线(在质量、细丝数量和卷曲度方面存在差异),以确定是否能找到一种更适合记录ERG的纱线。
使用以下DTL电极从五名受试者记录明视闪光ERG:27/7、22/1、11/1、11/12和22/12。数据分析包括在时域(TD)中对a波和b波的振幅和峰值时间测量,以及使用离散小波变换(DWT)方法在时频域中对ERG波形的特定频率描述符进行测量。还通过两项调查(李克特5级量表和排名量表)对12名受试者的舒适度进行了评估。
TD和DWT参数的比较无法确定最佳的DTL电极,所有电极的测量结果都相当。最大的电极(22/12)有产生最大反应的轻微趋势,但这是以舒适度为代价的,22/12电极被评为最不舒服的。
鉴于不同电极对信号幅度的影响最小,我们认为舒适度应决定我们的选择。从我们的结果来看,使用复丝电极似乎是最佳选择,因为这样可以得到一个尺寸优化的电极,既能记录大的反应,又能因组成该复丝电极的每根细丝尺寸小而将异物感降至最低。